Article

Structural and Biochemical Characterization of Phage λ FI Protein (gpFI) Reveals a Novel Mechanism of DNA Packaging Chaperone Activity.

From the Departments of Biochemistry and.
Journal of Biological Chemistry (impact factor: 4.77). 07/2012; 287(38):32085-95. DOI:10.1074/jbc.M112.378349 pp.32085-95
Source: PubMed

ABSTRACT One of the final steps in the morphogenetic pathway of phage λ is the packaging of a single genome into a preformed empty head structure. In addition to the terminase enzyme, the packaging chaperone, FI protein (gpFI), is required for efficient DNA packaging. In this study, we demonstrate an interaction between gpFI and the major head protein, gpE. Amino acid substitutions in gpFI that reduced the strength of this interaction also decreased the biological activity of gpFI, implying that this head binding activity is essential for the function of gpFI. We also show that gpFI is a two-domain protein, and the C-terminal domain is responsible for the head binding activity. Using nuclear magnetic resonance spectroscopy, we determined the three-dimensional structure of the C-terminal domain and characterized the helical nature of the N-terminal domain. Through structural comparisons, we were able to identify two previously unannotated prophage-encoded proteins with tertiary structures similar to gpFI, although they lack significant pairwise sequence identity. Sequence analysis of these diverse homologues led us to identify related proteins in a variety of myo- and siphophages, revealing that gpFI function has a more highly conserved role in phage morphogenesis than was previously appreciated. Finally, we present a novel model for the mechanism of gpFI chaperone activity in the DNA packaging reaction of phage λ.

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Keywords

Amino acid substitutions
 
C-terminal domain
 
DNA packaging reaction
 
efficient DNA packaging
 
FI protein
 
final steps
 
gpFI chaperone activity
 
head binding activity
 
major head protein
 
morphogenetic pathway
 
N-terminal domain
 
novel model
 
nuclear magnetic resonance spectroscopy
 
packaging chaperone
 
preformed empty head structure
 
Sequence analysis
 
structural comparisons
 
tertiary structures
 
three-dimensional structure
 
two-domain protein
 

Ana Popovic